X1100E

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The X1100E, part of Danaher's Slo-Syn Synchronous Motors series, boasts a refractive index range of 1.0000 to 2.0000. This motor features a measuring range of up to 90km, a pulse width of up to 2µs for triple wavelengths, and a minimum sampling resolution of 0.2m. It achieves a loss resolution of 0.001dB.

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Product Description:

The X1100E Synchronous Motor is designed for use in industrial automation applications. Danaher manufactures it and is part of the SLO-SYN MOTOR series. This product is engineered for hazardous locations classified under Class I, Group D. The motor operates efficiently in ambient temperatures up to 40°C.

The X1100E synchronous motor is operated at a single-phase input. The frequency range of the motor is 50- 60 Hz. The rated current of this motor is 3 amperes. The unit is offered as a fixed speed unit with selectable speeds of 60 or 72 RPM. It achieves a constant speed of 1100 oz-in torque to ensure a stable performance in the employed controlled environment. The design is single speed and does not vary the speed. This synchronous motor requires a 120 V power supply. The X1100E synchronous motor features instant start and stop functionality with a starting time of 5 to 25 milliseconds. It is necessary to run the motor with an external resistor and a capacitor. The required resistor is rated at 100 ohms and 160 watts, with part number 201052-025. The capacitor must be 17.5 µF, identified by part number 201053-026. This setup ensures synchronized rotation and consistent motor behavior. It supports load inertia of up to 9 lb-in² to keep accelerations and decelerations effective.

This X1100E synchronous motor is rated for continuous duty and maintains thermal stability with a temperature rise limit of 50°C. Its performance is consistent under standard operating conditions and without overload. Wiring adjustments allow for the process to be reversible, thus increasing operational flexibility. This model is one of the standard motors for the machinery that requires accuracy and repeatability. Its small size makes it suitable for installation in space-limited areas.

Attenuation zone
6 m
Event dead zone
≤1.5 m
File format
SOR
Linearity
±0.2 dB/dB
Loss resolution
0.001 dB
Loss threshold
0.01 dB
Maximum sampling points
20,000
Measuring range
100 m–90 km (10 steps)
Pulse width
5 ns–10 us (11 steps)
Range resolution
0.001 m
Reflection accuracy
±3 dB
Refractive index
1.0000–2.0000
Safety level
Class 3B
Sampling resolution range
0.2 m–8 m
Triple‑wavelength mode max pulse width
2 us

Frequently Asked Questions about X1100E:

Q: How does supporting load inertia up to 9 lb-in² benefit X1100E Synchronous Motor applications?

A: It improves control over acceleration and deceleration cycles. The X1100E Synchronous Motor maintains smooth operation with changing load demands.

Q: What is the purpose of using a 17.5 µF capacitor in the X1100E Synchronous Motor?

A: The 17.5 µF capacitor helps maintain motor phase balance. It plays a key role in the X1100E's synchronous operation.

Q: Why is the X1100E Synchronous Motor preferred in space-constrained environments?

A: Its compact design allows easy integration into tight machinery. The X1100E is ideal for high-density industrial systems.

Q: Why is thermal stability important in the X1100E Synchronous Motor?

A: Thermal stability prevents overheating during continuous operation. The X1100E motor maintains consistent performance without triggering thermal cutoffs.

Q: How does the motor's support for reversible wiring enhance system integration in X1100E?

A: Reversible wiring allows directional control without replacing hardware. This feature in the X1100E motor increases installation and application versatility.


Internal Product Review

  • ‘‘The X1100E Synchronous Motor offers precise fixed-speed performance, excellent for automation requiring repeatability. It features 1100 oz-in torque, thermal stability at 50°C, fast 25 ms starting, and reversible wiring. With 120V single-phase input, this compact unit ensures reliable operation in industrial control systems.’’

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